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Enantio-selective mechanism of the poly-proline chiral stationary phase: A molecular dynamics study.

机译:脯氨酸手性固定相的对映选择性机理:分子动力学研究。

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摘要

Poly-proline-based chiral stationary phases are relatively new stationary phases and have shown to be competitive to other commercially available chiral stationary phases for high performance liquid chromatography (HPLC). The conformational studies, solvation properties and enantio-selective mechanism of this chiral stationary phase are the main focus of this thesis. Semi-flexible models are developed based on an extensive series of ab initio calculations for proline selectors from di- to hexa-proline and a series of six chiral analytes. Then molecular dynamics simulations are performed to study the solvation, conformational preferences at the interface, and the selectivity.;The selectivity of the poly-proline chains was studied by molecular dynamics simulations of chiral analytes docking into the interface. The selectivity factors for a set of enantiomers were predicted successfully. Enantio-resolution has been shown to mostly happen with hydrogen bonding to poly-proline carbonyl oxygens located close to the interface. Steric interactions and conformational flexibility of the analytes are also contributing factors for enantio-resolution.;The solvation and conformational preferences of poly-proline selectors at the interface are examined in a normal phase n-hexane/-2propanol and a reverse phase water/methanol solvent. We noticed a significant difference between conformational preferences of poly-proline chains in these solvents indicating the effect of solvent polarity and hydrogen bonding on the relative stabilities of poly-proline conformers. Solvent partitioning occurs at the interface and this creates a polarity gradient between the stationary phase and the bulk that encourages analyte docking at the interface. Hydrogen bonding to the poly-proline selectors is shown to be a function of solvent composition and poly-proline conformation at the interface.
机译:基于聚脯氨酸的手性固定相是相对较新的固定相,对于高效液相色谱(HPLC),已显示出与其他市售手性固定相竞争的能力。该手性固定相的构象研究,溶剂化性质和对映选择性机理是本文的重点。基于大量的从头算计算,从二脯氨酸到六脯氨酸的脯氨酸选择剂以及一系列六种手性分析物,开发了半柔性模型。然后进行分子动力学模拟研究溶剂化,界面构象偏好和选择性。;通过手性分析物对接在界面上的分子动力学模拟研究了脯氨酸链的选择性。成功预测了一组对映异构体的选择性因子。已经证明对映体拆分主要是通过氢键键合到靠近界面的聚脯氨酸羰基氧上发生的。分析物的立体相互作用和构象柔韧性也是对映体拆分的影响因素;在正相正己烷/ -2丙醇和反相水/甲醇中检查了界面上聚脯氨酸选择剂的溶剂化和构象偏好溶剂。我们注意到在这些溶剂中聚脯氨酸链的构象偏好之间存在显着差异,表明溶剂极性和氢键对聚脯氨酸构象异构体相对稳定性的影响。溶剂分配发生在界面处,这会在固定相和主体之间形成极性梯度,从而促进分析物对接在界面上。氢键合到聚脯氨酸选择剂上是在界面处溶剂组成和聚脯氨酸构象的函数。

著录项

  • 作者

    Ashtari, Mohammad.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Chemistry Physical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 291 p.
  • 总页数 291
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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